Home A Front-End Circuit for Neural Recording Applications with Spectral Separation of LFP and Action Potentials Consuming 21 μW per Channel
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A Front-End Circuit for Neural Recording Applications with Spectral Separation of LFP and Action Potentials Consuming 21 μW per Channel

  • U. Bihr EMAIL logo and M. Ortmanns
Published/Copyright: September 6, 2012

Published Online: 2012-09-06

© 2012 by Walter de Gruyter Berlin Boston

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  1. Numerical and Experimental Analysis of Mechanical Loads on Stent-Vessel-Systems
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  8. A Front-End Circuit for Neural Recording Applications with Spectral Separation of LFP and Action Potentials Consuming 21 μW per Channel
  9. Long term in vivo stability and frequency response of polyimide based flexible array probes
  10. Production and Characterization of Encapsulation Layers for Micro-Implants
  11. A hybrid miniaturized hermetic vision prosthesis with 232 stimulating channels
  12. Design of small electrodes for matrix stimulation of finger muscles
  13. Investigation of the Accommodative Behaviour During Every Day Life Activities
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  15. Low temperature production process for hermetic transparent implant packages
  16. Design of an actuator for the demonstrator of an intraocular implant with lateral-shift optics
  17. Can Low-Accuracy Clocks Enable Energy Efficient Real-Time Communication in Active Medical Implants?
  18. Comparison of different power supply topologies to improve power efficiency of the Artificial Accommodation System
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  20. Intelligent Power Management enables Autonomous Power Supply of Sensor Systems for Modern Prostheses
  21. Design of power management in Energy Harvesting Devices
  22. Development of a throttle for an implantable infusion pump using porous ceramics
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  24. Piezoelectric Based Energy Management System for Powering Intelligent Implants and Prostheses
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  28. Drug delivery system for sustained delivery of caffeic acid phenethyl ester within lens capsule after cataract surgery
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